Fundamentals of Communications Systems by Michael P. Fitz (2007, Hardcover)

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Written by an award-winning communications expert, th first takes readers through analog communications basics, amplitude modulations, analog angle modulation, and random processes. Inside This On-Target Communications Engineering Tool • Mathematical Foundations • Analog Communications Basics • Amplitude Modulations • Analog Angle Modulation • More Topics in Analog Communications • Random Processes • Noise in Bandpass Communications Systems • Bandpass Gaussian Random Processes • Communications Basics • Optimal Single Bit Demodulation Structures • Transmitting More than One Bit • Complexity of Optimum Demodulation • Spectrally Efficient Data Transmission.

About this product

Product Identifiers

PublisherMcgraw-Hill Education
ISBN-100071482806
ISBN-139780071482806
eBay Product ID (ePID)57173586

Product Key Features

Number of Pages672 Pages
Publication NameFundamentals of Communications Systems
LanguageEnglish
Publication Year2007
SubjectInformation Theory, Telecommunications
TypeTextbook
Subject AreaComputers, Technology & Engineering
AuthorMichael P. Fitz
FormatHardcover

Dimensions

Item Height1.5 in
Item Weight45.3 Oz
Item Length9.3 in
Item Width7.2 in

Additional Product Features

Intended AudienceTrade
LCCN2007-017818
Dewey Edition22
IllustratedYes
Dewey Decimal621.382
Table Of ContentPreface Acknowledgments Chapter 1: Introduction Part 1: Mathematical Foundations Chapter 2: Signals and Systems Review Chapter 3: Review of Probability and Random Variables Chapter 4: Complex Baseband Representation of Bandpass Signals Part 2: Analog Communication Chapter 5: Analog Communications Basic Chapter 6: Amplitude Modulation Chapter 7: Analog Angle Modulation Chapter 8: More Topics in Analog Communications Part 3: Noise in Communications Systems Chapter 9: Random Processes Chapter 10: Noise in Bandpass Communication Systems Chapter 11: Fidelity in Analog Demodulation Part 4: Fundamentals of Digital Communication Chapter 12: Digital Communication Basics Chapter 13: Optimal Single Bit Demodulation Structures Chapter 14: Transmitting More Than One Bit Chapter 15: Managing the Complexity of Optimum Demodulation Chapter 16: Spectrality Efficient Data Transmission Chapter 17: Orthogonal Modulations with Memory Appendix A: Useful Formulas Appendix B: Notation Appendix C: Acronyms Appendix D: Fourier Transforms: f versus w Appendix E: Further Reading and Bibliography Index
SynopsisPublisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product. Get a Solid Account of Physical Layer Communications Theory, Illustrated with Numerous Interactive MATLAB Mini-Projects You can rely on Fundamentals of Communications Systems for a solid introduction to physical layer communications theory, filled with modern implementations and MATLAB examples. This state-of-the-art guide covers essential theory and current engineering practice, carefully explaining the real-world tradeoffs necessary among performance, spectral efficiency, and complexity. Written by an award-winning communications expert, the book first takes readers through analog communications basics, amplitude modulations, analog angle modulation, and random processes. This essential resource then explains noise in bandpass communications systems...bandpass Gaussian random processes...digital communications basics...complexity of optimum demodulation...spectrally efficient data transmission...and more. Fundamentals of Communications Systems features: A modern approach to communications theory, reflecting current engineering applications Numerous MATLAB problems integrated throughout, with software available for download Detailed coverage of tradeoffs among performance, spectral efficiency, and complexity in engineering design Text written in four parts for easy modular presentation Inside This On-Target Communications Engineering Tool * Mathematical Foundations * Analog Communications Basics * Amplitude Modulations * Analog Angle Modulation * More Topics in Analog Communications * Random Processes * Noise in Bandpass Communications Systems * Bandpass Gaussian Random Processes * Digital Communications Basics * Optimal Single Bit Demodulation Structures * Transmitting More than One Bit * Complexity of Optimum Demodulation * Spectrally Efficient Data Transmission, Get a Solid Account of Physical Layer Communications Theory, Illustrated with Numerous Interactive MATLAB Mini-Projects You can rely on "Fundamentals of Communications Systems" for a solid introduction to physical layer communications theory, filled with modern implementations and MATLAB examples. This state-of-the-art guide covers essential theory and current engineering practice, carefully explaining the real-world tradeoffs necessary among performance, spectral efficiency, and complexity. Written by an award-winning communications expert, the book first takes readers through analog communications basics, amplitude modulations, analog angle modulation, and random processes. This essential resource then explains noise in bandpass communications systems... bandpass Gaussian random processes... digital communications basics... complexity of optimum demodulation... spectrally efficient data transmission...and more. "Fundamentals of Communications Systems" features: A modern approach to communications theory, reflecting current engineering applications Numerous MATLAB problems integrated throughout, with software available for download Detailed coverage of tradeoffs among performance, spectral efficiency, and complexity in engineering design Text written in four parts for easy modular presentation Inside This On-Target Communications Engineering Tool - Mathematical Foundations - Analog Communications Basics - Amplitude Modulations - Analog Angle Modulation - More Topics in Analog Communications - Random Processes - Noise in Bandpass Communications Systems - Bandpass Gaussian Random Processes - DigitalCommunications Basics - Optimal Single Bit Demodulation Structures - Transmitting More than One Bit - Complexity of Optimum Demodulation - Spectrally Efficient Data Transmission, Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product. Get a Solid Account of Physical Layer Communications Theory, Illustrated with Numerous Interactive MATLAB Mini-Projects You can rely on Fundamentals of Communications Systems for a solid introduction to physical layer communications theory, filled with modern implementations and MATLAB examples. This state-of-the-art guide covers essential theory and current engineering practice, carefully explaining the real-world tradeoffs necessary among performance, spectral efficiency, and complexity. Written by an award-winning communications expert, the book first takes readers through analog communications basics, amplitude modulations, analog angle modulation, and random processes. This essential resource then explains noise in bandpass communications systems...bandpass Gaussian random processes...digital communications basics...complexity of optimum demodulation...spectrally efficient data transmission...and more. Fundamentals of Communications Systems features: A modern approach to communications theory, reflecting current engineering applications Numerous MATLAB problems integrated throughout, with software available for download Detailed coverage of tradeoffs among performance, spectral efficiency, and complexity in engineering design Text written in four parts for easy modular presentation Inside This On-Target Communications Engineering Tool - Mathematical Foundations - Analog Communications Basics - Amplitude Modulations - Analog Angle Modulation - More Topics in Analog Communications - Random Processes - Noise in Bandpass Communications Systems - Bandpass Gaussian Random Processes - Digital Communications Basics - Optimal Single Bit Demodulation Structures - Transmitting More than One Bit - Complexity of Optimum Demodulation - Spectrally Efficient Data Transmission
LC Classification NumberTK5101

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